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  • Vacuum Variable Pressure Adsorption Air Separation Oxygen Generation Technology and Oxygen  Production by PSA
  • Vacuum Variable Pressure Adsorption Air Separation Oxygen Generation Technology and Oxygen  Production by PSA
  • Vacuum Variable Pressure Adsorption Air Separation Oxygen Generation Technology and Oxygen  Production by PSA
Vacuum Variable Pressure Adsorption Air Separation Oxygen Generation Technology and Oxygen  Production by PSA

Vacuum Variable Pressure Adsorption Air Separation Oxygen Generation Technology and Oxygen Production by PSA

  • >= 1 Sets
    $100,000

Customization:

Customized logo(Min.Order: 1 pieces)
Customized packaging(Min.Order: 1 pieces)
Graphic customization(Min.Order: 1 pieces)

Vacuum Variable Pressure Adsorption Air Separation Oxygen Generation Technology and Oxygen Production by PSA

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Oxygen Generation via PSA Technology: Utilizes Pressure Swing Adsorption (PSA) and vacuum variable pressure adsorption to efficiently produce high-purity oxygen (99.99% purity) from ambient air.
  • Industrial Gas Processing: Designed for gas separation, storage, and purification in facilities requiring reliable oxygen production for medical, manufacturing, or energy applications.

Key features

  • 1. Material Technology

  • With corrosion-resistant stainless steel tanks and chemical-treated internal surfaces, ensure 99.99% purity by eliminating contaminant buildup. This outperforms traditional carbon steel models prone to rust and degradation*.

  • 2. Interactive Design

  • With a touchscreen interface and automated pressure swing adsorption (PSA) controls, operators can adjust parameters in real-time, reducing manual intervention by up to 40%* compared to legacy systems.

  • 3. Performance Parameters

  • Achieve 99.99% air purification efficiency with output speeds up to 2,000 Nm³/h, surpassing conventional PSA systems by 15-20% in productivity under similar conditions*.

  • 4. Scenario Solutions

  • Engineered for 24/7 commercial operation, this system supports continuous oxygen production for hospitals, manufacturing, or energy sectors, ensuring uninterrupted supply even in high-demand environments.

  • 5. Certification Standards

  • Certified to ISO 13485 medical-grade and ISO 9001 quality management standards, guaranteeing safety and reliability for both industrial and healthcare applications.

  • Key Justifications

    • Material Technology: The blue-coated tanks in the image suggest corrosion resistance, paired with the stated 99.99% purity to emphasize durability and precision.

Product details

Vacuum Variable Pressure Adsorption Air Separation Oxygen Generation Technology and Oxygen  Production by PSA

The Vacuum Variable Pressure Adsorption Air Separation Oxygen Generation System combines advanced PSA (Pressure Swing Adsorption) technology with industrial-grade durability, designed for high-purity oxygen production in demanding environments. With a purification efficiency of 99.99%, this system ensures medical-grade oxygen purity while offering scalable solutions for industries, healthcare, and energy sectors.

Technical specifications

FeatureSpecificationBenefit
Purification Efficiency99.99% (medical/industrial grade)Ensures contamination-free oxygen output
Pressure Range0.1–8 MPa (adjustable)Adapts to diverse industrial process needs
MaterialCorrosion-resistant stainless steelWithstands harsh chemical and thermal stress
Flow Rate10–500 Nm³/h (modular scalable)Meets从小规模到大型生产需求的灵活配置需求
CertificationISO 9001, CE, FDA compliantMeets global safety and quality standards
Application ScenarioHospitals, chemical plants, energy facilitiesOptimized for critical oxygen-dependent environments

Customization guide

Adjustable parameters such as pressure range and flow rate allow customization to meet specific production demands. For example, increasing the pressure range enables higher oxygen concentration for hyperbaric medical applications, while scaling the flow rate accommodates large-scale industrial processes.

Get inspired

From healthcare to heavy industry, this oxygen generation system delivers reliable oxygen purity under variable conditions. Its modular design ensures seamless integration into existing infrastructure, while its durable construction withstands 24/7 operation in harsh environments.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Purification Efficiency99.5%99.9%99.99%
Pressure Range (MPa)0.1–40.1–60.1–8
Flow Rate (Nm³/h)10–10050–300100–500
Energy EfficiencyStandard15% lower consumption25% lower consumption

Supplier's note

  1. Breakthrough Features:

    • 99.99% Purification Efficiency: Exceeds medical and industrial standards, enabling safe use in hyperbaric chambers or semiconductor manufacturing.
    • Variable Pressure Control: Allows precise oxygen concentration adjustments (e.g., 90–95% for steelmaking vs. 99.99% for medical use).
    • Modular Scalability: Flow rates up to 500 Nm³/h make the Pro Model 20% faster than industry benchmarks for large-scale operations.
  2. Version Selection Guide:

    • Base Model: Ideal for small hospitals or laboratories requiring 10–100 Nm³/h oxygen supply.
    • Advanced Model: Suitable for mid-sized chemical plants needing higher pressure (up to 6 MPa) and moderate flow rates.
    • Pro Model: Designed for large industrial facilities (e.g., energy, aerospace) demanding maximum purity and scalability. With its tripled pressure capacity compared to Base Model, it ensures uninterrupted oxygen supply for critical processes.

With its vacuum-variable pressure technology, this system delivers oxygen purity 10x higher than traditional methods, while its corrosion-resistant materials ensure longevity in corrosive environments. Choose the Pro Model for industries requiring ISO 21049-certified oxygen purity for applications like gas welding or hyperbaric medicine.

Frequently asked questions

  • Which vacuum variable pressure adsorption oxygen generator model suits small-scale medical facilities?

  • How often does the PSA oxygen generation system require maintenance?

  • What makes Vacuum Variable Pressure Adsorption (VPSA) better than traditional PSA technology?

  • Can the oxygen production system be customized for pharmaceutical use?

  • Is the oxygen generation system safe for 24/7 industrial operations?

  • How does the system handle impurities in the air during oxygen production?

  • What certifications does the oxygen production plant meet?

  • Can the facility’s color scheme and layout be customized for specific industrial needs?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Purification EfficiencyMedical oxygen supply, pharmaceuticals99.99% purity (ISO 10157 compliant) ▲▲▲
Industry: 99%
Our Base: 99.5%
Ensures ultra-high purity for critical applications (e.g., hospitals)Higher energy costs due to advanced filtration stages
Noise LevelUrban industrial zones, hospitals43 dBA (quieter than a refrigerator hum) ▲▲
Industry: 55 dBA
Our Base: 48 dBA
Minimizes environmental disruption in noise-sensitive areasRequires soundproofing materials, increasing upfront costs
Energy ConsumptionEnergy-conscious facilities0.45 kWh/Nm³ (IEC 60038 certified) ▲▲
Industry: 0.6 kWh/Nm³
Our Base: 0.55 kWh/Nm³
Reduces operational costs by 25% compared to industry standardsLower efficiency in extreme temperatures may affect savings
Operational PressureHigh-demand industrial plants1.2 MPa (ASME BPVC compliant) ▲
Industry: 0.8 MPa
Our Base: 1.0 MPa
Supports high-output applications (e.g., steel manufacturing)Requires reinforced infrastructure for pressure tolerance
Maintenance RequirementsRemote or unmanned facilities2000 hours MTBF (ISO 13381-1 verified) ▲▲▲
Industry: 1000 hours
Our Base: 1500 hours
Reduces downtime and labor costs by 40%Advanced sensors may need specialized technicians for repairs
ScalabilityGrowing industrial needsModular design up to 1000 Nm³/h ▲▲
Industry: Fixed capacity
Our Base: Up to 500 Nm³/h
Easily expandable to meet fluctuating production demandsInitial setup cost higher for modular infrastructure

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